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在一项全生态系统变暖实验中揭示了沼泽恢复力和碳积累的最佳温度。

Temperature optimum for marsh resilience and carbon accumulation revealed in a whole-ecosystem warming experiment.

作者信息

Smith Alexander J, Noyce Genevieve L, Megonigal James Patrick, Guntenspergen Glenn R, Kirwan Matthew L

机构信息

Virginia Institute of Marine Science, William & Mary, Gloucester Point, Virginia, USA.

Smithsonian Environmental Research Center, Edgewater, Maryland, USA.

出版信息

Glob Chang Biol. 2022 May;28(10):3236-3245. doi: 10.1111/gcb.16149. Epub 2022 Mar 16.

Abstract

Coastal marshes are globally important, carbon dense ecosystems simultaneously maintained and threatened by sea-level rise. Warming temperatures may increase wetland plant productivity and organic matter accumulation, but temperature-modulated feedbacks between productivity and decomposition make it difficult to assess how wetlands and their thick, organic-rich soils will respond to climate warming. Here, we actively increased aboveground plant-surface and belowground soil temperatures in two marsh plant communities, and found that a moderate amount of warming (1.7°C above ambient temperatures) consistently maximized root growth, marsh elevation gain, and belowground carbon accumulation. Marsh elevation loss observed at higher temperatures was associated with increased carbon mineralization and increased microtopographic heterogeneity, a potential early warning signal of marsh drowning. Maximized elevation and belowground carbon accumulation for moderate warming scenarios uniquely suggest linkages between metabolic theory of individuals and landscape-scale ecosystem resilience and function, but our work indicates nonpermanent benefits as global temperatures continue to rise.

摘要

沿海湿地是全球重要的、碳密集型生态系统,同时受到海平面上升的维持和威胁。气温升高可能会提高湿地植物生产力和有机物质积累,但生产力与分解之间的温度调节反馈使得难以评估湿地及其深厚、富含有机质的土壤将如何应对气候变暖。在这里,我们在两个沼泽植物群落中主动提高了地上植物表面和地下土壤温度,发现适度升温(比环境温度高1.7°C)始终能使根系生长、沼泽海拔升高和地下碳积累最大化。在较高温度下观察到的沼泽海拔损失与碳矿化增加和微地形异质性增加有关,这是沼泽被淹没的一个潜在早期预警信号。适度升温情景下的海拔和地下碳积累最大化独特地表明了个体代谢理论与景观尺度生态系统恢复力和功能之间的联系,但我们的研究表明,随着全球气温持续上升,这种益处并非永久性的。

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